FAN DISC APPARATUS
20190048887 ยท 2019-02-14
Assignee
Inventors
Cpc classification
F04D29/263
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/266
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D5/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2230/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02K3/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/0405
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/34
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D5/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/044
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2260/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2220/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D5/066
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/329
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2230/72
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A fan disc apparatus for a gas turbine engine comprises a fan disc; a first drive arm for connecting the fan disc to a fan drive shaft of the gas turbine engine; and a second drive arm for connecting the fan disc to the fan drive shaft.
Claims
1. A fan disc apparatus for a gas turbine engine comprising: a fan disc; a first drive arm for connecting the fan disc to a fan drive shaft of the gas turbine engine; and a second drive arm for connecting the fan disc to the fan drive shaft.
2. A fan disc apparatus as claimed in claim 1, wherein the second drive arm comprises a first arm portion formed integrally with the fan disc, and a second arm portion formed separately to the fan disc and connectable to the first arm portion.
3. A fan disc apparatus as claimed in claim 2, wherein the first arm portion comprises a first hook portion and the second arm portion comprises a corresponding second hook portion for connection with the first hook portion of the first arm portion.
4. A fan disc apparatus as claimed in claim 3, wherein the first hooked portion faces axially rearward, and wherein the second hook portion faces axially forward.
5. A fan disc apparatus as claimed in claim 2, wherein the second arm portion is configured to be secured to the fan drive shaft independently of the fan disc and the first drive arm.
6. A fan disc apparatus as claimed in claim 2, wherein the first arm portion has a radial span shorter than a radial span of the second arm portion, or the first arm portion has a radial span which is larger than a radial span of the second arm portion.
7. A fan disc apparatus as claimed in claim 1, wherein the fan disc comprises an axially-extending disc hoop and the first and second drive arms extend radially inwards of the disc hoop, and wherein the first and second drive arms are axially spaced apart on a radially inner surface of the disc hoop.
8. A fan disc apparatus as claimed in claim 7, wherein the first drive arm is arranged axially forward of the second drive arm, or the first drive arm is arranged axially rearward of the second drive arm.
9. A fan disc apparatus as claimed in claim 1, wherein the fan disc apparatus further comprises a hub sleeve for connection with the fan drive shaft, wherein the first and second drive arms extend between the fan disc and the hub sleeve.
10. A fan disc apparatus as claimed in claim 9, wherein the first drive arm is formed integrally with the hub sleeve, and/or wherein the second arm portion of the second drive arm is formed separately to the sleeve and is configured to connect the first arm portion to the hub sleeve.
11. A fan disc apparatus as claimed in claim 2, wherein the first and second arm portions are configured to be connected by a releasable fastener.
12. A fan disc apparatus as claimed in claim 2, wherein the second arm portion of the second drive arm comprises one or more splines for preventing rotation of the second arm portion relative to the first arm portion and the fan disc.
13. A fan disc apparatus as claimed in claim 1, wherein the second drive arm comprises a radially inner fixing point, a radially outer fixing point, and a drive arm plate configured for attachment between the inner and outer fixing points.
14. A fan disc apparatus as claimed in claim 13, wherein the drive arm plate is attachable to each of the inner and outer fixing points using one or more removable fasteners, or wherein the drive arm plate is attachable to each of the inner and outer fixing points with a welded connection.
15. A fan disc apparatus as claimed in claim 13, wherein one or both of the inner and outer fixing points comprises a radially extending inner and outer flange, respectively, and wherein inner flange is integral to a hub sleeve for connection to the fan drive shaft, and/or wherein the outer flange is integral to the fan disc.
16. A fan disc apparatus as claimed in claim 13, wherein the drive arm plate comprises a fan blade securing portion for securing one or more fan blades to the fan disc when the drive arm plate is attached to the fan disc.
17. A fan disc apparatus as claimed in claim 1, wherein the fan disc is formed of first and second fan disc portions, the first fan disc portion being formed integrally with the first drive arm, and the second fan disc portion being formed integrally with the second drive arm.
18. A fan disc apparatus as claimed in claim 17, wherein the first drive arm and first fan disc portion are formed integrally with a first hub sleeve for connection to the fan drive shaft, and/or wherein the second drive arm and second fan disc portion are formed integrally with a second hub sleeve for connection to the first hub sleeve or the fan drive shaft.
19. A fan disc apparatus as claimed in claim 1, wherein the first and second drive arms are rearward-facing drive arms, or the first and second drive arms are forward-facing drive arms.
20. A gas turbine engine comprising a fan drive shaft and a fan disc apparatus as claimed in claim 1.
Description
DESCRIPTION OF THE DRAWINGS
[0033] Embodiments will now be described by way of example only, with reference to the Figures, in which:
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
[0042]
[0043]
[0044]
DETAILED DESCRIPTION
[0045] With reference to
[0046] The gas turbine engine 10 works in the conventional manner so that air entering the intake 12 is accelerated by the fan 13 to produce two air flows: a first air flow into the intermediate pressure compressor 14 and a second air flow which passes through a bypass duct 22 to provide propulsive thrust. The intermediate pressure compressor 14 compresses the air flow directed into it before delivering that air to the high pressure compressor 15 where further compression takes place.
[0047] The compressed air exhausted from the high-pressure compressor 15 is directed into the combustion equipment 16 where it is mixed with fuel and the mixture combusted. The resultant hot combustion products then expand through, and thereby drive the high, intermediate and low-pressure turbines 17, 18, 19 before being exhausted through the nozzle 20 to provide additional propulsive thrust. The high 17, intermediate 18 and low 19 pressure turbines drive respectively the high pressure compressor 15, intermediate pressure compressor 14 and fan 13, each by suitable interconnecting shaft.
[0048] Other gas turbine engines to which the present disclosure may be applied may have alternative configurations. By way of example such engines may have an alternative number of interconnecting shafts (e.g. two) and/or an alternative number of compressors and/or turbines. Further the engine may comprise a gearbox provided in the drive train from a turbine to a compressor and/or fan.
[0049]
[0050] The fan disc apparatus 200 comprises a fan disc 204, a first drive arm 206, and a second drive arm 208.
[0051] The fan disc 204 comprises a hoop 210. The radially outer surface of the fan disc hoop 210 comprises a plurality of recesses for receiving the roots of the fan blades 202 (not shown).
[0052] The fan 13 is rotatable within the engine 10. In order to achieve this rotation, the fan disc 204 is mounted to a fan drive shaft 212 which extends axially within the engine and is connected to the low pressure turbine 19. As the low pressure turbine is driven by the exhaust, thereby rotating the fan drive shaft 212 and, consequently, the fan 13.
[0053] The fan 13 is attached to the drive shaft 212 via the first 206 and second 208 drive arms. As shown in
[0054] At a radially inner portion of the first drive arm 206, it is connected to a hub sleeve 214 which is arranged on the drive shaft 212. In some examples, the hub sleeve 214 may also be integrally formed with the fan disc 204 and the first drive arm 206. The hub sleeve 214 comprises splines on a radially inner surface thereof to prevent rotation of the fan disc 204 with respect to the drive shaft 212. A locking nut or cap 216 is provided adjacent the hub sleeve 214 to prevent axial movement of the hub sleeve 214 relative to the drive shaft 212. As will be shown in other examples, the drive arms may in other examples extend axially rearward from the fan disc 204. In such cases, the first drive arm 206 may be secured to the drive shaft using a curvic or bolted coupling or similar.
[0055] As shown, the fan disc apparatus 200 also comprises a second drive arm 208. Like the first drive arm 206, the second drive arm 208 extends radially inward and axially forward from the fan disc 204. The second drive arm 208 is arranged axially rearward of the first drive arm 206.
[0056] Unlike the first drive arm 206, the second drive arm 208 is formed of a first arm portion 218 and a second arm portion 220.
[0057] The first arm portion 218, like the first drive arm 206, is formed integrally with the fan disc 204. The first arm portion 218 extends radially inward by a relatively short distance and comprises a first hook portion 222 at a radially inner end thereof. The first hook portion 222 comprises an annular flange which extends rearward parallel to the axial direction 11 of the engine 10.
[0058] The second arm portion 220 comprises a secondary hub sleeve 224 for engagement with the drive shaft 212. The secondary hub sleeve comprises splines which prevent rotational movement between the second arm portion 220 and the shaft 212. A locking nut 226 secures the second arm portion axially on the drive shaft 212. The second arm portion extends radially outward over the majority of the radial distance between the drive shaft 212 and the fan disc 204. At a radially outer end, the second arm portion 220 comprises a second hook portion 228. The second hook portion 228 comprises an annular flange which extends forward parallel to the axial direction 11 of the engine 10.
[0059] In use the radially outer surface of the first hook portion 222 engages with the radially inner surface of the second hook portion 228. As the fan disc 204 rotates, it will tend to dilate, and the first arm portion 218 will be pulled away from the drive shaft 212. However, the engagement of the hook portions 222,228 will prevent the first arm portion 218 from moving radially outward as it is retained by the second arm portion 220. Accordingly, the second drive arm 208 provides a stiffer fan disc apparatus which is less prone to dilation and vibration. Accordingly, balancing of disc and blade stresses under vibrational loads may be improved.
[0060] An advantage of connecting the first and second arm portions 218,220 using the hook portions 222, 228 will be apparent when considering the assembly of the fan disc apparatus 200 on the drive shaft 212. Firstly, the drive shaft 212 may be exposed at an axially foremost end. The secondary hub sleeve 224 of the second arm portion 220 can be mounted on the drive shaft 212 by sliding it axially along the shaft 212. The second arm portion 220 is then secured with the locking nut 226. Subsequently, the hub sleeve 214 (with disc 204 attached thereto via the first drive arm 206) can be mounted on the shaft 212 axially. As the hub sleeve 214 is moved axially rearward, the forward-facing hook portion 228 of the second arm portion 220 will naturally engage with the rearward facing hook portion 222 of the first arm portion 218. Once the first and second arm portions 218,220 are fully engaged and the fan disc 204 is correctly located, the locking nut 216 can be attached to secure the fan disc apparatus 200 on the drive shaft 212, which may be a blind assembly within the engine.
[0061] Accordingly, the arrangement of
[0062]
[0063]
[0064] In the fan disc apparatus 300, the second drive arm 208 comprises first and second drive arm portions 318, 320. However, in this instance, the first and second drive arm portions 318, 320 are connected with a bolted connection 322.
[0065] In fan disc apparatus 300, the first drive arm 306 is formed integrally with the hub sleeve 314. The hub sleeve 314 extends rearward of the first drive arm 306 to provide a sleeve mounting portion 330. The secondary hub sleeve 324 of the second arm portion 320 is configured to be received concentrically on the sleeve mounting portion 330. The second arm portion 320 is then secured on the hub sleeve 314 using a locking nut 326. After the second arm portion 320 is secured on the hub sleeve 314, the bolted connection 322 to the first arm portion 318 can be secured while the fan disc apparatus 300 is outside of the engine 10.
[0066] Once the second arm portion 320 is secured to both the hub sleeve 314 and the first arm portion 318, the fan disc apparatus 300 comprising both first and second arms 306, 308 can be mounted on the drive shaft 312 and secured using the locking nut 316.
[0067] Accordingly, the entire fan disc apparatus 300 can be assembled outside of the engine 10, and simply fitted to the drive shaft 312 as a single piece.
[0068]
[0069] In the apparatus 300, the second arm portion 320 is mounted on the hub sleeve 314, but the connection between the second arm portion 320 and the first arm portion 318 is achieved using a first hook portion 322 of the first arm portion and a second hook portion 328 of the second arm portion 320 as described in relation to
[0070]
[0071] In the apparatus 400, the second drive arm 408 comprises a radially inner fixing point 432, a radially outer fixing point 418, and a drive arm plate 420 configured for attachment between the inner and outer fixing points.
[0072] The radially outer fixing point 418 is a radially extending flange which, like the first arm portions 218, 318 extends radially inward from the fan disc 404. The radially inner fixing point 432 is also a radially extending flange, which extends radially outwards from a rearward extension 430 of the hub sleeve 414. The inner and outer fixing points 432, 418 form the radially inner and radially outer ends of the second drive arm and are integrally formed with the hub sleeve 414 and the fan disc 404 respectively.
[0073] The drive arm plate 420 is a radially extending plate ring which extends between the inner and outer fixing points 432, 418 to form the main span of the second drive arm 408. The drive arm plate comprises a plurality of through-holes formed about its circumference adjacent the inner fixing point 432 and adjacent the outer fixing point 418. The fixing points 418, 432 comprise corresponding through holes.
[0074] Prior to installation of the fan disc assembly 400 on the drive shaft 412, the drive arm plate 420 is secured to the inner and outer fixing points using bolted connections 422 and 434 which pass through the through holes in the drive arm plate 420 and the fixing points 418, 432. Accordingly, the fixing points 418, 432 and the drive arm plate 420 in combination form the second drive arm 408. It should be understood that other fasteners than bolts could be used to connect the drive arm plate 420, such as rivets.
[0075]
[0076] In order to achieve this, the radially outer fixing point 418 is located axially forward of the first drive arm 406 on the radially inner surface of the fan disc 404. Furthermore, the hub sleeve 414 comprises an extension 430 which extends axially forward of the first drive arm's 406 interface with the hub sleeve 414. The drive arm plate 420 is then arranged in contact with the axially forward faces of the fixing points 418, 432 and bolted in place. In this arrangement, the second drive arm 408 may be more easily accessible when the fan disc apparatus 400 is secured to the drive shaft 412, for example by simply removing the nose cone 436. Thus, it should be understood that the provision of a fan disc apparatus in which the second drive arm is arranged axially forward of the first drive arm may enable easier assembly, repair, and maintenance of the apparatus.
[0077] A yet further arrangement of a fan disc assembly 400 is shown in
[0078] Like apparatus 400 of
[0079] It will be understood that, as the enclosed chamber 438 between the first and second drive arms 406, 408 may not be accessible after the welding of the drive arm plate 420, extreme care must be taken to avoid weld deformation or splatter within the chamber, which could unbalance the fan disc apparatus 400. A welded drive arm plate 420 may increase the strength and torque carrying capability of the second drive arm 408 and reduce stress concentrations compared to bolted connections.
[0080] It should be understood that a welded drive arm plate could also be applied to arrangements in which the second drive arm is arranged axially rearward of the first drive arm, as the welding can be performed before the fan disc apparatus is arranged on the fan drive shaft.
[0081]
[0082] In the fan disc apparatus 500, the second drive arm 508 is arranged axially forward of the first drive arm 506.
[0083] A radially inner fixing point or flange 532 is provided on the hub sleeve 514 forward of the first drive arm 506. In this case, the fixing flange 532 extends only in the direction in a plane perpendicular to the drive shaft axis (and more generally the engine axis).
[0084] As will be understood the fan blades 502 may be located in the fan disc 504 by sliding a fan root (not shown) axially into corresponding axial channels formed in the fan disc 504. In this case, the fan blade roots may be inserted into the channels from an axial front face 537 of the fan disc 504 and slid axially rearward such that they are received completely within the fan disc 504. Of course, in order to retain the fan blades 502 in the fan disc 504, they must be prevented from moving axially forward back out of the channels in the fan disc 504.
[0085] In the apparatus 504, the drive arm plate 520 performs a dual function of retaining the fan blades 502 and forming part of the second drive arm 508. In this case, the drive arm plate 520, like the flange 532, extends purely in a radial direction in a plane perpendicular to the engine axis. At its radially inner end the drive arm plate 520 is bolted to the inner flange 532 in the same manner as the drive arm plates 420, 420 in
[0086] The drive arm plate extends radially such that, when secured to the inner flange 532, a radially outer fan blade securing portion 540 of the drive arm plate 520 extends at least partially across the front disc face 537. Bolts 522 secure the plate 520 to the fan disc 504. The fan blade securing portion 540 of the drive arm plate occludes at least part of the open ends of the channels in which the fan blades 502 are received, thereby preventing axial movement of the fan blades out of the channels in the forward axial direction and retaining the fan blades 502 in the fan disc 504.
[0087] It should be understood that the drive arm plate 520 may, in other examples, not extend purely radially, and could also extend in an axial direction forward or rearward like the second drive arms 208, 308 described above. Furthermore, the second drive arm 508 could also be arranged rearward of the first drive arm 506. In such a case, it may be possible to arrange the fan blade retaining portion 540 such that it prevents axial movement of the fan blades 502 rearward.
[0088] In
[0089] In the fan disc apparatus 600, the fan disc 604 is formed of first fan disc portion 604a and second fan disc portion 604b. Each of the first and second fan disc portions 604a, b are formed integrally with the first drive arm 606 and the second drive arm 608 respectively. In each case, the drive arm extends radially inwards in the same manner as for apparatuses 200, 300.
[0090] The fan disc portions 604a and 604b are separate annular hoops which, when arranged axially, can be connected to form the complete fan disc 604. To this end, the first fan disc portion 604a comprises a connecting flange 642 at a radially outer, axially rearward location, and the second fan disc portion comprises a corresponding connecting flange 644 at a radially outer, axially forward location. Accordingly, when the rear axial face of the first fan disc portion 604a is abutted against the front axial face of the second fan disc portion, the connecting flanges 642,644 are in abutment and the two fan disc portions 604a, b can be secured together with a plurality of fixings 646, such as bolts, or may be fixed with a more permanent method, such as welding or friction welding.
[0091] Like the apparatus 300 of
[0092] The second drive are 608 has a secondary hub sleeve 624 formed at a radially inner end thereof. The secondary hub sleeve 624 has an inner diameter substantially equal to an outer diameter of the sleeve mounting portion 630 and is configured to be received concentrically on the sleeve mounting portion 630.
[0093] When the secondary hub sleeve 624 is arranged concentrically on the sleeve mounting portion 630 and moved axially rearward relative to the hub sleeve 614, the first and second fan disc portions 604a,b are brought into abutment as described above, and can be secured together to form the fan disc 604 and, broadly, the fan disc apparatus 600. The secondary hub sleeve 624 can also then secured on the hub sleeve 614 using a locking nut 626.
[0094] Once the fan disc portions 604a, b and the hub sleeves 614,624 have been secured together, the fan disc apparatus 600 can be mounted on the drive shaft as a single part.
[0095] In other examples, the secondary hub sleeve may not be mounted onto the hub sleeve, and may mount directly onto the drive shaft 614.
[0096] For illustrative purposes,
[0097] In this example, the first and second drive arms 706, 708 are each connected to an annular radially extending plate 714 which is secured to a front axial face of the drive shaft 712 with a curvic coupling 716 or similar. The first drive arm 706 is formed integrally with the fan disc 704 and the plate 714. The second arm portion 720 of the second drive arm 708 could instead be formed integrally with the plate 714.
[0098] The fan disc 704 comprises a first arm portion 718 of a similar type to the first arm portion 318 of apparatus 300 in
[0099] Accordingly, it should be understood that the examples of
[0100] It will be understood that the disclosure is not limited to the embodiments above-described and various modifications and improvements can be made without departing from the concepts described herein. Except where mutually exclusive, any of the features may be employed separately or in combination with any other features and the disclosure extends to and includes all combinations and sub-combinations of one or more features described herein.